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载有迷迭香提取物的纳米结构脂质载体的设计与评价及其在阿尔茨海默病治疗中的应用。

Design and evaluation of nanostructured lipid carriers loaded with Salvia officinalis extract for Alzheimer's disease treatment.

机构信息

Institute of Pharmaceutical Technology, Center of Pharmaceutical Nanotechnology, Faculty of Pharmacy, Ss. Cyril and Methodius University in Skopje, Skopje, North Macedonia.

Institute of Chemistry, Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University in Skopje, Skopje, North Macedonia.

出版信息

J Biomed Mater Res B Appl Biomater. 2022 Jun;110(6):1368-1390. doi: 10.1002/jbm.b.35006. Epub 2022 Jan 12.

Abstract

Considering the potential of Salvia officinalis in prevention and treatment of Alzheimer's disease (AD), as well as the ability of nanostructured lipid carriers (NLC) to successfully deliver drug molecules across blood-brain barrier (BBB), the objective of this study was design, development, optimization and characterization of freeze-dried salvia officinalis extract (FSE) loaded NLC intended for intranasal administration. NLC were prepared by solvent evaporation method and the optimization was carried out using central composite design (CCD) of experiments. Further, the optimized formulation (NLCo) was coated either with chitosan (NLCc) or poloxamer (NLCp). Surface characterization of the particles demonstrated a spherical shape with smooth exterior. Particle size of optimal formulations after 0.45 μm pore size filtration ranged from 127 ± 0.68 nm to 140 ± 0.74 nm. The zeta potential was -25.6 ± 0.404 mV; 22.4 ± 1.106 mV and - 6.74 ± 0.609 mV for NLCo, NLCc, and NLCp, respectively. Differential scanning calorimetry (DSC) confirmed the formation of NLC whereas Fourier-transform infrared spectroscopy confirmed the FSE encapsulation into particles. All formulations showcased relatively high drug loading (>86.74 mcg FSE/mg solid lipid) and were characterized by prolonged and controlled release that followed Peppas-Sahlin in vitro release kinetic model. Protein adsorption studies revealed the lowest adsorption of the proteins onto NLCp (43.53 ± 0.07%) and highest protein adsorption onto NLCc (55.97 ± 0.75%) surface. The modified ORAC assay demonstrated higher antioxidative activity for NLCo (95.31 ± 1.86%) and NLCc (97.76 ± 4.00%) as compared to FSE (90.30 ± 1.53%). Results obtained from cell cultures tests pointed to the potential of prepared NLCs for FSE brain targeting and controlled release.

摘要

考虑到迷迭香在预防和治疗阿尔茨海默病(AD)方面的潜力,以及纳米结构脂质载体(NLC)成功将药物分子递送到血脑屏障(BBB)的能力,本研究旨在设计、开发、优化和表征用于鼻腔给药的冻干迷迭香提取物(FSE)负载的 NLC。NLC 是通过溶剂蒸发法制备的,优化是通过实验的中心复合设计(CCD)进行的。进一步,优化的配方(NLCo)分别用壳聚糖(NLCc)或泊洛沙姆(NLCp)包衣。颗粒的表面特征显示为球形,表面光滑。经过 0.45μm 孔径过滤后,最佳配方的粒径范围为 127±0.68nm 至 140±0.74nm。最佳配方的 Zeta 电位分别为-25.6±0.404mV;22.4±1.106mV 和-6.74±0.609mV,分别为 NLCo、NLCc 和 NLCp。差示扫描量热法(DSC)证实了 NLC 的形成,傅里叶变换红外光谱证实了 FSE 包封在颗粒中。所有配方均表现出相对较高的药物载药量(>86.74μg FSE/mg 固体脂质),并表现出符合 Peppas-Sahlin 体外释放动力学模型的延长和控制释放。蛋白质吸附研究表明,蛋白质在 NLCp 上的吸附最低(43.53±0.07%),在 NLCc 上的吸附最高(55.97±0.75%)。改良的 ORAC 测定法表明,与 FSE(90.30±1.53%)相比,NLCo(95.31±1.86%)和 NLCc(97.76±4.00%)具有更高的抗氧化活性。细胞培养试验的结果表明,所制备的 NLC 具有用于 FSE 脑靶向和控制释放的潜力。

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